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Mechanisms of Fold Formation during Flange Upsetting of Tubular Parts

机译:管状件法兰镦粗期间折叠形成机制

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In the present paper a two-stage upsetting process preventing buckling at critical upsetting heights of tubular parts of the aluminum alloy EN AW 6082 O1 is analyzed. Numerical investigations have been conducted to determine influencing parameters on the annular fold formation and numerous experimental investigations have been conducted for their validation. It has been shown, that using a two-stage upsetting process buckling at critical upsetting height ratios can be prevented by optimized pre-upsetting shapes obtained by using numerical simulation previously. Although preventing buckling, folding in the annular flange occurs always for investigated geometries within second upsetting stage in experimental investigations while numerical simulations predict sound part quality. Using micro hardness measurements, REM analysis and an alternative process route, further mechanisms and influence factors have been found. These lead to annular folding apart from buckling of the tubular part and are presented in this paper. Furthermore observed folding without buckling in experimental analysis recently cannot be predicted numerically by using common extrapolation of flow curves for high effective strain values, which is also discussed in this contribution.
机译:在本文中,分析了防止铝合金en AW6082O1的管状部分临界镦粗高度屈曲的两级镦粗工艺。已经进行了数值调查以确定影响环形折叠形成的影响,并进行了许多实验研究的验证。已经示出了,可以通过先前通过使用数值模拟获得的优化预镦令形状来防止在临界镦粗高度比下使用两阶段镦粗过程屈曲。虽然防止屈曲,在环形凸缘中折叠,但总是在实验研究中的第二令镦粗阶段内的调查几何形状,而数值模拟预测声音部分质量。使用微硬度测量,REM分析和替代过程路线,已经发现了进一步的机制和影响因素。这些导致环形折叠除了管状部分的屈曲,并在本文中提出。此外,在实验分析中没有屈曲的观察到折叠,最近不能通过使用用于高有效应变值的常见的流动曲线来预测,这也是在本贡献中讨论的。

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